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Cannabidiol suppresses emergency MDSCs generation by disturbing EEF1B2-mediated C/EBPβ protein synthesis in
Jie Pan1,2, Lixin Zhao1,3, Haojie Du1
1State Key Laboratory of Pharmaceutical Biotechnology and Nanjing Drum Tower Hospital, School of Life Sciences, Chemistry and Biomedicine Innovation Center (ChemBIC), Nanjing University, Nanjing, China.
Background:
Colorectal cancer often develops from adenomas over years, necessitating early intervention. Myeloid-derived suppressor cells (MDSCs) are major immune suppressive cell types in colon cancer development from adenomas through early inflammation-induced emergency myelopoiesis. Cannabidiol (CBD) is reported to function in psychosis, coronavirus infection and some cancers through immune regulation. However, its target and underlying mechanisms in colorectal adenomas are unknown.
Methods:
The antitumor effect of CBD was validated in two classical colorectal adenomas models including azoxymethane (AOM)/dextran sulfate sodium salt (DSS) induced mice model and high-fat fed Apcmin/+ mice model. Single-cell RNA sequencing was used to identified the immune environment change after CBD treatment in mice colorectal adenomas. Target responsive accessibility profiling was used to find the target of CBD in MDSCs. Subsequently, multiple immunology assays and molecular biology experiment were employed to explore the adenomas prevention mechanisms of CBD.
Results:
Here, we found that CBD prevented the incidence of colorectal adenomas in AOM/DSS model and high-fat diet fed Apcmin/+ mice model. Our single-cell RNA sequencing data and the results of immunofluorescence revealed that CBD treatment significantly decreased the number of MDSCs in both two colon adenomas models. Mechanistically, CBD bound to the guanine nucleotide exchange factor domain of EEF1B2, inhibiting its function in translational elongation and subsequent C/EBPβ synthesis. This disruption suppressed the differentiation and generation of MDSCs, leading to enhanced T-cell activation and prevention of colorectal adenoma progression.
Conclusion:
Our findings reveal EEF1B2-mediated C/EBPβ protein synthesis as a crucial pathway in MDSC generation and highlight the potential of CBD as an early intervention strategy for colorectal adenomas.
Insights
Cannabidiol (CBD) prevents colorectal adenomas by targeting EEF1B2, reducing immune-suppressing myeloid-derived suppressor cells (MDSCs). This mechanism enhances T-cell activation, offering a potential early intervention for colon cancer.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Colorectal cancer (CRC) develops from adenomas, with myeloid-derived suppressor cells (MDSCs) playing a key role in immune suppression during this progression.
- Cannabidiol (CBD) is known for immune-regulating properties, but its specific targets and mechanisms in colorectal adenoma development were previously unclear.
Purpose of the Study:
- To investigate the potential of Cannabidiol (CBD) as an early intervention strategy for colorectal adenomas.
- To elucidate the molecular mechanisms by which CBD affects the immune microenvironment and prevents adenoma formation.
Main Methods:
- CBD's efficacy was tested in azoxymethane/dextran sulfate sodium salt (AOM/DSS) and high-fat fed Apcmin/+ mouse models of colorectal adenoma.
- Single-cell RNA sequencing and target responsive accessibility profiling were employed to identify CBD's effects on the immune landscape and its molecular targets within MDSCs.
- Immunology assays and molecular biology experiments were conducted to explore CBD's adenoma prevention mechanisms.
Main Results:
- CBD significantly reduced colorectal adenoma incidence in both mouse models.
- CBD treatment led to a marked decrease in MDSC populations in the colon adenomas.
- CBD was found to directly bind to EEF1B2, inhibiting its function, suppressing MDSC generation, and subsequently enhancing T-cell activation.
Conclusions:
- EEF1B2-mediated C/EBPβ protein synthesis is identified as a critical pathway in MDSC generation.
- Cannabidiol (CBD) demonstrates potential as an effective early intervention strategy for preventing colorectal adenoma progression.
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